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Название: Features of Calcium Hexaaluminate Formation in Alumina-Zirconia Ceramics
Авторы: Cherkasova, N. Yu.
Antropova, K. A.
Kuzmin, R. I.
Emurlaev, K. I.
Kuchumova, I. D.
Burkhinova, N. Yu.
Zobova, Yu.
Дата публикации: 2023-09
Издатель: Уральский федеральный университет
Ural Federal University
Библиографическое описание: Features of Calcium Hexaaluminate Formation in Alumina-Zirconia Ceramics / N. Cherkasova, K. Antropova, R. Kuzmin, K. Emurlaev, I. Kuchumova, N. Burkhinova, Yu. Zobova // Chimica Techno Acta. — 2023. — Vol. 10, No. 3. — № 202310317.
Аннотация: Alumina-zirconia composites containing calcium hexaaluminate in the amount from 0 to 15 wt.% were investigated. The materials were obtained by water dispersion, granulation, axial pressing, and free sintering. Density and open porosity were determined by the hydrostatic weighing method. Phase analysis was performed using synchrotron radiation. Structural investigations were conducted using scanning and transmission electron microscopy. Vickers hardness was determined at a load of 10 kg. Fracture toughness was determined by the indentation method. With increasing CaAl12O19 content in the composites, the relative density decreased from 98.5% to 91.8%, and the open porosity increased from 0.2 to 1.4%. The lattice parameters of t-ZrO2 crystal lattice did not change up to 12 wt.% CaAl12O19, and the degree of tetragonality was 1.435. The degree of tetragonality decreased for the material with 15 wt.% CaAl12O19 and reached 1.420. The lattice parameters of CaAl12O19 decreased with increasing content. Platelet size increased with increasing calcium hexaaluminate content. For the materials containing up to 9 wt.% CaAl12O19, the average length of the platelets was 2 μm, the width was 0.4 μm, and the aspect ratio was 5. For the material with maximum calcium hexaaluminate content, the average length of the platelets was 4.2 μm, the width was 0.6 μm, and the aspect ratio was 7. With increasing CaAl12O19 content, the hardness decreased from 1700±25 to 1390±30 Hv, and the critical stress intensity factor increased by 34% to 6.7±0.3 MPa·m1/2.
Ключевые слова: CAAL12O19
ALUMINA-ZIRCONIA
SYNCHROTRON
FRACTURE TOUGHNESS
PLATELETS
TEM
URI: http://elar.urfu.ru/handle/10995/128369
Конференция/семинар: IХ Международная Российско-Казахстанская научно-практическая конференция «Химические технологии функциональных материалов»
Chemical Technologies of Functional Materials
RKFM'23
Дата конференции/семинара: 25.05.2023-27.05.2023
Идентификатор РИНЦ: https://elibrary.ru/item.asp?id=55174878
ISSN: 2411-1414
DOI: 10.15826/chimtech.2023.10.3.17
Сведения о поддержке: This study was funded by the Federal Task of Ministry of Science and Higher Education of the Russian Federation (project no. 2019-0931: «Investigations of Metastable Structures Formed on Material Surfaces and Interfaces under Extreme External Impacts»).
The research was conducted at the core facility «Structure, mechanical and physical properties of materials». Synchrotron X-ray experiments were carried out at the shared research center SSTRC on the basis of the VEPP-4 - VEPP-2000 complex at BINP SB RAS. The transmission electron microscopy studies were carried out on the equipment of the Centre of collective usage “Nanotech” of the Institute of Strength Physics and Materials Science of the Siberian Branch of the Russian Academy of Sciences.
Источники: Chimica Techno Acta. 2023. Vol. 10. № 3
Располагается в коллекциях:Chimica Techno Acta

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